Ca2+ channels mediate excitation-secretion coupling and show little inactivation at sensory ribbon synapses, enabling reliable synaptic information transfer during sustained stimulation. Studies of Ca2+-channel complexes in HEK293 cells indicated that Ca2+-binding proteins (CaBPs) antagonize their calmodulin-dependent inactivation. Although human mutations affecting CABP2 were shown to cause hearing impairment, the role of CaBP2 in auditory function and the precise disease mechanism remained enigmatic. Here, we disrupted CaBP2 in mice and showed that CaBP2 is required for sound encoding at inner hair cell synapses, likely by suppressing Ca2+-channel inactivation. We propose that the number of activatable Ca2+ channels at the active zone is ...
Ca2+ acts as a fundamental signal transduction element in the inner ear, delivering information abou...
The study of hair cells (HCs) located in the cochlea of the inner ear is beginning to unveil the mys...
Ribbon synapses of inner hair cells (IHCs) mediate high rates of synchronous exocytosis to indefatig...
Ca2+ channels mediate excitation-secretion coupling and show little inactivation at sensory ribbon s...
Hearing is a unique sensory feature providing the individual with acoustic information about the sur...
CaBPs are a family of Ca(2+)-binding proteins related to calmodulin and are localized in the brain a...
CaBPs are a family of Ca2+-binding proteins related to calmodulin and are localized in the brain and...
Ca(2+) acts as a fundamental signal transduction element in inner ear, delivering information about ...
Clinical management of auditory synaptopathies like other genetic hearing disorders is currently lim...
Clinical management of auditory synaptopathies like other genetic hearing disorders is currently lim...
Hearing relies on the ability of the inner ear to convert sound waves into electrical signals. The m...
Clinical management of auditory synaptopathies like other genetic hearing disorders is currently lim...
EF-hand Ca2+-binding proteins are thought to shape the spatiotemporal properties of cellular Ca2+ si...
Ca2+ acts as a fundamental signal transduction element in the inner ear, delivering information abou...
Ribbon synapses of inner hair cells (IHCs) mediate high rates of synchronous exocytosis to indefatig...
Ca2+ acts as a fundamental signal transduction element in the inner ear, delivering information abou...
The study of hair cells (HCs) located in the cochlea of the inner ear is beginning to unveil the mys...
Ribbon synapses of inner hair cells (IHCs) mediate high rates of synchronous exocytosis to indefatig...
Ca2+ channels mediate excitation-secretion coupling and show little inactivation at sensory ribbon s...
Hearing is a unique sensory feature providing the individual with acoustic information about the sur...
CaBPs are a family of Ca(2+)-binding proteins related to calmodulin and are localized in the brain a...
CaBPs are a family of Ca2+-binding proteins related to calmodulin and are localized in the brain and...
Ca(2+) acts as a fundamental signal transduction element in inner ear, delivering information about ...
Clinical management of auditory synaptopathies like other genetic hearing disorders is currently lim...
Clinical management of auditory synaptopathies like other genetic hearing disorders is currently lim...
Hearing relies on the ability of the inner ear to convert sound waves into electrical signals. The m...
Clinical management of auditory synaptopathies like other genetic hearing disorders is currently lim...
EF-hand Ca2+-binding proteins are thought to shape the spatiotemporal properties of cellular Ca2+ si...
Ca2+ acts as a fundamental signal transduction element in the inner ear, delivering information abou...
Ribbon synapses of inner hair cells (IHCs) mediate high rates of synchronous exocytosis to indefatig...
Ca2+ acts as a fundamental signal transduction element in the inner ear, delivering information abou...
The study of hair cells (HCs) located in the cochlea of the inner ear is beginning to unveil the mys...
Ribbon synapses of inner hair cells (IHCs) mediate high rates of synchronous exocytosis to indefatig...